β‘ Energy & ROI
π Tank PumpβUp
π Piping Drop
π§ Moisture
βοΈ Specific Power
π° LifeβCycle Cost
π³οΈ Leak Flow
π Surge Margin
π Pressure Conv
π¨ Flow Conv
π Compressor Power
π¦ Receiver Size
β‘
Input Parameters
Motor Rated Power (kW)
Annual Operating Hours
Load Factor (%)
Electricity Tariff ($/kWh)
Leak Rate (%)
Audit Budget ($)
Calculate Savings
π
Results
Annual Energy
β
kWh
Annual Cost
β
$
Leak Cost
β
$
Recoverable Savings
β
$
Payback:
β
months
π
Receiver & Test Data
Receiver Volume
Liters
mΒ³
Starting Pressure (bar(g))
Ending Pressure (bar(g))
Fill Time (seconds)
Atmospheric Pressure (bar)
Calculate FAD
π
Free Air Delivery
mΒ³/min
β
l/s
β
cfm
β
Based on receiver pumpβup test (ISO 1217).
π
Pipe & Flow
Flow
cfm
mΒ³/min
Pipe Inner Diameter
mm
inch
Pipe Length (m)
System Pressure (bar(g))
Calculate Drop
π
Velocity & ΞP
Velocity
β
m/s
Pressure Drop
β
bar
ΞP (psi):
β
Enter parameters.
π§
Inlet Conditions
Compressor Flow
cfm
mΒ³/min
Inlet Air Temperature (Β°C)
Relative Humidity (%)
Operating Hours (hr/day)
Estimate Condensate
π§
Condensate Load
Liters/day
β
Liters/week
β
Liters/year
β
For dryer & drain sizing.
βοΈ
Specific Power
Power (kW)
Flow
cfm
mΒ³/min
Calculate
π
Results
kW per mΒ³/min
β
kW per 100 cfm
β
Enter data for efficiency rating.
π°
Life-Cycle Cost
Purchase Cost ($)
Power (kW)
Annual Operating Hours
Load Factor (%)
Tariff ($/kWh)
Maintenance ($/year)
Analysis Period (years)
Calculate Total Cost
π
Ownership Cost
Total Cost Over Period
β
$
Annual Energy Cost:
β
π³οΈ
Leak Parameters
Orifice Diameter
mm
inch
Pressure (bar(g))
Number of Leaks
Operating Hours/year
Tariff ($/kWh)
Specific Power (kW/cfm)
COβ Factor (kg/kWh)
Calculate Leak Loss
πΈ
Leakage Impact
CFM Lost
β
Annual Cost
β
$
COβ Impact:
β
metric tons/year
π
Surge Data
Actual Flow
cfm
mΒ³/min
Surge Flow (limit)
cfm
mΒ³/min
Calculate Margin
β οΈ
Surge Margin
Margin
β
%
Enter flows to assess risk.
π
Pressure Converter
Value
From Unit
bar
psi
kPa
MPa
kg/cmΒ²
Convert
π
Converted Values
π¨
Flow Converter
Value
From Unit
cfm
scfm
acfm
mΒ³/min
l/s
NmΒ³/hr
To Unit
mΒ³/min
cfm
scfm
acfm
l/s
NmΒ³/hr
Actual Pressure (bar(g))
Actual Temp (Β°C)
Convert
π
Result
β
π
Compressor Power Estimate
Flow (inlet)
mΒ³/min
cfm
Inlet Pressure (bar(g))
Discharge Pressure (bar(g))
Isentropic Efficiency (%)
Specific Heat Ratio (k)
Estimate Power
β‘
Estimated Power
kW
β
HP
β
π¦
Receiver Sizing
Flow (FAD)
mΒ³/min
cfm
Pressure Band (bar)
Compressor Response Time (sec)
Size Receiver
π
Recommended Volume
mΒ³
β
Liters
β
Based on FAD, pressure band and response time.